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安徽铜陵狮子山铜(金)矿田成矿流体地球化学研究 被引量:11
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作者 李进文 裴荣富 +4 位作者 梅燕雄 朱和平 王莉娟 李铁军 王永磊 《矿床地质》 CAS CSCD 北大核心 2006年第4期427-437,共11页
为深化认识狮子山铜(金)矿田的成矿机制和规律,文章对该矿田的流体包裹体进行了观测和显微测温,结果表明,狮子山矿田铜(金)矿床与成矿有关的流体包裹体丰富,可以划分为富气相包裹体、富液相包裹体和含子晶(多为石盐,少量钾盐等)多相包裹... 为深化认识狮子山铜(金)矿田的成矿机制和规律,文章对该矿田的流体包裹体进行了观测和显微测温,结果表明,狮子山矿田铜(金)矿床与成矿有关的流体包裹体丰富,可以划分为富气相包裹体、富液相包裹体和含子晶(多为石盐,少量钾盐等)多相包裹体3种类型,其均一温度集中于131~570℃,盐度w(NaCleq)1.07%~60.72%;流体包裹体气相成分以H2O为主,富含CO2和N2,普遍含有少量CH4、He、Ar、O2、C2H6、H2S等成分;阳离子主要是Na+、K+、Ca2+,阴离子成分主要为SO2-4和Cl-。含矿石英和石榴石的δ18OH2O值分别为0.38‰~10.7‰(均值5.49‰)和8.74‰~9.64‰(均值9.24‰),δD值分别为-94.3‰~-58.64‰(均值-71.50‰)和-95.77‰~-75.82‰(平均-85.25‰);热液成因方解石的δ13C值集中于-6.9‰~-4.3‰,不同于区内大理岩、灰岩、白云岩的δ13C值(0.1‰~5‰)。由此反映出,成矿流体源自岩浆流体,可近似地作为NaCl_H2O体系,属NaCl不饱和型,经历了从高温、高盐度向中温、中低盐度的持续演化过程,与成矿作用阶段基本对应。初始阶段的成矿流体呈超临界态,演化过程中有一定比例的大气降水或地下水的参与。降温、减压、流体沸腾是导致流体中巨量铜(金)元素卸载的主要因素。 展开更多
关键词 地球化学 流体 流体包裹体 铜陵狮子山() 安徽
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Chemical and stable isotopic geochemical characteristics of ore-forming fluid of the Shizishan copper and gold ore-field,Tongling,China 被引量:9
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作者 陆三明 徐晓春 +3 位作者 谢巧勤 楼金伟 储国正 熊亚平 《岩石学报》 SCIE EI CAS CSCD 北大核心 2007年第1期177-184,共8页
Shizishan ore-field is a nonferrous and noble metal ore-field which is most rich in copper and gold.There are many types of fluid inclusions in minerals of the deposits.The homogeneous temperatures and the salinities ... Shizishan ore-field is a nonferrous and noble metal ore-field which is most rich in copper and gold.There are many types of fluid inclusions in minerals of the deposits.The homogeneous temperatures and the salinities of the fluid inclusions in main mineralization stages have wide ranges,while the different types of the fluid inclusions existed together and their homogeneous temperatures are almost identical in the same mineralization stage,which indicates that the ore-forming process has great relation with the fluid boiling.The gas and liquid chemical compositions and the carbon,hydrogen and oxygen isotopic compositions of the fluid inclusions show that the ore-forming fluids of copper-gold deposits have the same characteristics and evolution tendency,which reflects that the ore-forming material mainly came from the magmatism.The stratigraphic component and the meteoric water may mix in ore- forming fluids in the later mineralization stages.Furthermore,with the fall of the ore-forming temperature the ratios of water and rock decreased.The characteristics of chemical composition and carbon isotopic composition of fluid inclusions indicate that CH4 may play an important role for separating copper and gold in the ore-forming process. 展开更多
关键词 铜陵狮子山铜金矿田 流体成分 稳定同位素 地球化学
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